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脱细胞真皮/纳米纤维胶原双层支架的构建及表征及其在全层创面愈合中的应用。

Fabrication and characterization of bilayer scaffolds made of decellularized dermis/nanofibrous collagen for healing of full-thickness wounds.

机构信息

Cellular and Molecular Research Centre, Iran University of Medical Sciences, Tehran, Iran.

Department of Textile Engineering, Amirkabir University of Technology, Tehran, Iran.

出版信息

Drug Deliv Transl Res. 2023 Jun;13(6):1766-1779. doi: 10.1007/s13346-023-01292-0. Epub 2023 Jan 26.

Abstract

Skin tissue engineering has progressed from simple wound dressings to biocompatible materials with desired physico-chemical properties that can deliver regenerative biomolecules. This study describes using a novel biomimetic hybrid scaffold of decellularized dermis/collagen fibers that can continuously deliver stromal cell-derived factor-1 alpha (SDF-1α) for skin regeneration. In diabetic rat models, the idea that sustained SDF-1α infusion could increase the recruitment of CXCR4-positive cells at the injury site and improve wound regeneration was investigated. The morphology of the scaffold, its biocompatibility, and the kinetics of SDF-1 release were all assessed. SDF-1α was successfully incorporated into collagen nanofibers, resulting in a 200-h continuous release profile. The microscopic observations exhibited that cells are attached and proliferated on proposed scaffolds. As evaluated by in vivo study and histological examination, fabricated scaffold with SDF-1α release capacity exhibited a remarkably more robust ability to accelerate wound regeneration than the control group. Besides, the SDF-1α-loaded scaffold demonstrated functional effects on the proliferation and recruitment of CD31 and CXCR4-positive cells in the wound bed. Additionally, no adverse effects such as hyperplasia or scarring were found during the treatment period. It may be concluded that the fabricated hybrid scaffold based on natural polymer opens up a new option for topical administration of bioactive molecules. We believe the SDF-1α-loaded hybrid scaffold has promise for skin tissue engineering.

摘要

皮肤组织工程已从简单的伤口敷料发展到具有所需物理化学特性的生物相容性材料,这些材料可以输送再生生物分子。本研究描述了使用脱细胞真皮/胶原纤维的新型仿生混合支架,该支架可以持续输送基质细胞衍生因子-1 阿尔法(SDF-1α)以促进皮肤再生。在糖尿病大鼠模型中,研究了持续 SDF-1α输注是否可以增加损伤部位 CXCR4 阳性细胞的募集并改善伤口再生的想法。评估了支架的形态、生物相容性和 SDF-1 释放动力学。成功地将 SDF-1α 掺入胶原纳米纤维中,实现了 200 小时的持续释放曲线。微观观察表明细胞附着并在提出的支架上增殖。通过体内研究和组织学检查评估,具有 SDF-1α 释放能力的制备支架表现出明显更强的加速伤口再生的能力,优于对照组。此外,SDF-1α 负载支架在伤口床上对 CD31 和 CXCR4 阳性细胞的增殖和募集表现出功能作用。此外,在治疗期间未发现增生或瘢痕等不良反应。可以得出结论,基于天然聚合物的制备混合支架为生物活性分子的局部给药开辟了新的选择。我们相信负载 SDF-1α 的混合支架在皮肤组织工程中有应用前景。

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